Revert "Revert "Switched from mapping target process memory to svcReadProcessMemory & svcWriteProcessMemory functions.""
This reverts commit 1fd689f5da
.
This commit is contained in:
parent
fed62855cb
commit
938cb6492f
@ -55,9 +55,6 @@ typedef struct CheatDescription
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u64 codes[0];
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} CheatDescription;
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u32 codeStartAddress, heapStartAddress;
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u32 codeTotalSize, heapTotalSize;
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CheatDescription* cheats[1024] = { 0 };
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u8 cheatFileBuffer[16384] = { 0 };
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u32 cheatFilePos = 0;
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@ -118,75 +115,81 @@ u64 cheatTitleInfo = -1ULL;
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char failureReason[64];
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static bool Cheat_IsValidAddress(u32 address, u32 size)
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static bool Cheat_IsValidAddress(const Handle processHandle, u32 address, u32 size)
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{
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if (codeStartAddress > 0 && codeStartAddress <= address && address <= codeStartAddress + codeTotalSize - size)
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{
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return true;
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}
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if (heapStartAddress > 0 && heapStartAddress <= address && address <= heapStartAddress + heapTotalSize - size)
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{
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MemInfo info;
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PageInfo out;
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Result res = svcQueryDebugProcessMemory(&info, &out, processHandle, address);
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if (R_SUCCEEDED(res) && info.state != MEMSTATE_FREE && info.base_addr > 0 && info.base_addr <= address && address <= info.base_addr + info.size - size) {
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return true;
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}
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return false;
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}
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static bool Cheat_Write8(u32 offset, u8 value)
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static u32 ReadWriteBuffer32 = 0;
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static u16 ReadWriteBuffer16 = 0;
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static u8 ReadWriteBuffer8 = 0;
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static bool Cheat_Write8(const Handle processHandle, u32 offset, u8 value)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 1))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 1))
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{
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*((u8*) (cheat_state.offset + offset)) = value;
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return true;
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*((u8*) (&ReadWriteBuffer8)) = value;
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return R_SUCCEEDED(svcWriteProcessMemory(processHandle, &ReadWriteBuffer8, cheat_state.offset + offset, 1));
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}
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return false;
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}
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static bool Cheat_Write16(u32 offset, u16 value)
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static bool Cheat_Write16(const Handle processHandle, u32 offset, u16 value)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 2))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 2))
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{
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*((u16*) (cheat_state.offset + offset)) = value;
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return true;
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*((u16*) (&ReadWriteBuffer16)) = value;
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return R_SUCCEEDED(svcWriteProcessMemory(processHandle, &ReadWriteBuffer16, cheat_state.offset + offset, 2));
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}
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return false;
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}
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static bool Cheat_Write32(u32 offset, u32 value)
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static bool Cheat_Write32(const Handle processHandle, u32 offset, u32 value)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 4))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 4))
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{
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*((u32*) (cheat_state.offset + offset)) = value;
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return true;
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*((u32*) (&ReadWriteBuffer32)) = value;
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return R_SUCCEEDED(svcWriteProcessMemory(processHandle, &ReadWriteBuffer32, cheat_state.offset + offset, 4));
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}
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return false;
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}
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static bool Cheat_Read8(u32 offset, u8* retValue)
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static bool Cheat_Read8(const Handle processHandle, u32 offset, u8* retValue)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 1))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 1))
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{
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*retValue = *((u8*) (cheat_state.offset + offset));
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return true;
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Result res = svcReadProcessMemory(&ReadWriteBuffer8, processHandle, cheat_state.offset + offset, 1);
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*retValue = *((u8*) (&ReadWriteBuffer8));
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return R_SUCCEEDED(res);
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}
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return false;
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}
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static bool Cheat_Read16(u32 offset, u16* retValue)
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static bool Cheat_Read16(const Handle processHandle, u32 offset, u16* retValue)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 2))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 2))
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{
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*retValue = *((u16*) (cheat_state.offset + offset));
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return true;
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Result res = svcReadProcessMemory(&ReadWriteBuffer16, processHandle, cheat_state.offset + offset, 2);
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*retValue = *((u16*) (&ReadWriteBuffer16));
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return R_SUCCEEDED(res);
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}
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return false;
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}
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static bool Cheat_Read32(u32 offset, u32* retValue)
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static bool Cheat_Read32(const Handle processHandle, u32 offset, u32* retValue)
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{
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if (Cheat_IsValidAddress(cheat_state.offset + offset, 4))
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if (Cheat_IsValidAddress(processHandle, cheat_state.offset + offset, 4))
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{
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*retValue = *((u32*) (cheat_state.offset + offset));
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return true;
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Result res = svcReadProcessMemory(&ReadWriteBuffer32, processHandle, cheat_state.offset + offset, 4);
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*retValue = *((u32*) (&ReadWriteBuffer32));
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return R_SUCCEEDED(res);
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}
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return false;
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}
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@ -208,7 +211,7 @@ static u8 Cheat_GetNextTypeE(const CheatDescription* cheat)
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return (u8) ((cheat->codes[cheat_state.typeELine] >> (typeEMapping[cheat_state.typeEIdx])) & 0xFF);
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}
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static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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static u32 Cheat_ApplyCheat(const Handle processHandle, const CheatDescription* const cheat)
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{
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cheat_state.index = 0;
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cheat_state.offset = 0;
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@ -241,7 +244,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Description: 32bit write of YYYYYYYY to 0XXXXXXX.
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if (!skipExecution)
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{
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if (!Cheat_Write32((arg0 & 0x0FFFFFFF), arg1)) return 0;
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if (!Cheat_Write32(processHandle, (arg0 & 0x0FFFFFFF), arg1)) return 0;
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}
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break;
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case 0x1:
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@ -250,7 +253,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Description: 16bit write of YYYY to 0XXXXXXX.
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if (!skipExecution)
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{
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if (!Cheat_Write16((arg0 & 0x0FFFFFFF), (u16) (arg1 & 0xFFFF))) return 0;
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if (!Cheat_Write16(processHandle, (arg0 & 0x0FFFFFFF), (u16) (arg1 & 0xFFFF))) return 0;
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}
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break;
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case 0x2:
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@ -259,7 +262,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Description: 8bit write of YY to 0XXXXXXX.
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if (!skipExecution)
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{
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if (!Cheat_Write8((arg0 & 0x0FFFFFFF), (u8) (arg1 & 0xFF))) return 0;
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if (!Cheat_Write8(processHandle, (arg0 & 0x0FFFFFFF), (u8) (arg1 & 0xFF))) return 0;
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}
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break;
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case 0x3:
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@ -271,7 +274,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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{
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u32 newSkip;
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u32 value = 0;
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if (!Cheat_Read32(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read32(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if (value < arg1)
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{
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newSkip = 0;
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@ -295,7 +298,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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{
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u32 newSkip;
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u32 value = 0;
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if (!Cheat_Read32(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read32(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if (value > arg1)
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{
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newSkip = 0;
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@ -319,7 +322,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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{
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u32 newSkip;
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u32 value = 0;
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if (!Cheat_Read32(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read32(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if (value == arg1)
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{
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newSkip = 0;
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@ -343,7 +346,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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{
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u32 newSkip;
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u32 value = 0;
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if (!Cheat_Read32(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read32(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if (value != arg1)
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{
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newSkip = 0;
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@ -368,7 +371,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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u32 newSkip;
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u16 mask = (u16) ((arg1 >> 16) & 0xFFFF);
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u16 value = 0;
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if (!Cheat_Read16(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read16(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if ((value & (~mask)) < (arg1 & 0xFFFF))
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{
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newSkip = 0;
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@ -393,7 +396,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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u32 newSkip;
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u16 mask = (u16) ((arg1 >> 16) & 0xFFFF);
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u16 value = 0;
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if (!Cheat_Read16(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read16(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if ((value & (~mask)) > (arg1 & 0xFFFF))
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{
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newSkip = 0;
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@ -418,7 +421,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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u32 newSkip;
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u16 mask = (u16) ((arg1 >> 16) & 0xFFFF);
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u16 value = 0;
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if (!Cheat_Read16(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read16(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if ((value & (~mask)) == (arg1 & 0xFFFF))
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{
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newSkip = 0;
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@ -443,7 +446,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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u32 newSkip;
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u16 mask = (u16) ((arg1 >> 16) & 0xFFFF);
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u16 value = 0;
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if (!Cheat_Read16(arg0 & 0x0FFFFFFF, &value)) return 0;
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if (!Cheat_Read16(processHandle, arg0 & 0x0FFFFFFF, &value)) return 0;
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if ((value & (~mask)) != (arg1 & 0xFFFF))
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{
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newSkip = 0;
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@ -659,7 +662,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Example: D3000000 023D6B28
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if (!skipExecution)
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{
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if (!Cheat_Write32(arg1, cheat_state.data)) return 0;
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if (!Cheat_Write32(processHandle, arg1, cheat_state.data)) return 0;
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cheat_state.offset += 4;
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}
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break;
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@ -672,7 +675,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Example: D7000000 023D6B28
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if (!skipExecution)
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{
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if (!Cheat_Write16(arg1, (u16) (cheat_state.data & 0xFFFF))) return 0;
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if (!Cheat_Write16(processHandle, arg1, (u16) (cheat_state.data & 0xFFFF))) return 0;
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cheat_state.offset += 2;
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}
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break;
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@ -685,7 +688,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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// Example: D8000000 023D6B28
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if (!skipExecution)
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{
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if (!Cheat_Write8(arg1, (u8) (cheat_state.data & 0xFF))) return 0;
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if (!Cheat_Write8(processHandle, arg1, (u8) (cheat_state.data & 0xFF))) return 0;
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cheat_state.offset += 1;
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}
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break;
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@ -699,7 +702,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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if (!skipExecution)
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{
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u32 value = 0;
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if (!Cheat_Read32(arg1, &value)) return 0;
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if (!Cheat_Read32(processHandle, arg1, &value)) return 0;
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cheat_state.data = value;
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}
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break;
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@ -713,7 +716,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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if (!skipExecution)
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{
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u16 value = 0;
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if (!Cheat_Read16(arg1, &value)) return 0;
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if (!Cheat_Read16(processHandle, arg1, &value)) return 0;
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cheat_state.data = value;
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}
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break;
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@ -727,7 +730,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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if (!skipExecution)
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{
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u8 value = 0;
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if (!Cheat_Read8(arg1, &value)) return 0;
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if (!Cheat_Read8(processHandle, arg1, &value)) return 0;
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cheat_state.data = value;
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}
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break;
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@ -783,7 +786,7 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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u8 byte = Cheat_GetNextTypeE(cheat);
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if (!skipExecution)
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{
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if (!Cheat_Write8(beginOffset + i, byte)) return 0;
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if (!Cheat_Write8(processHandle, beginOffset + i, byte)) return 0;
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}
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}
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cheat_state.index = cheat_state.typeELine;
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@ -797,66 +800,45 @@ static u32 Cheat_ApplyCheat(const CheatDescription* const cheat)
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return 1;
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}
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static void Cheat_EatEvents(Handle debug)
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{
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DebugEventInfo info;
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Result r;
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while(true)
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{
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if((r = svcGetProcessDebugEvent(&info, debug)) != 0)
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{
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if(r == (s32)(0xd8402009))
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{
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break;
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}
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}
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svcContinueDebugEvent(debug, 3);
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}
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}
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static Result Cheat_MapMemoryAndApplyCheat(u32 pid, CheatDescription* const cheat)
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{
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Handle processHandle;
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Handle debugHandle;
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Result res;
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res = svcOpenProcess(&processHandle, pid);
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if (R_SUCCEEDED(res))
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{
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u32 codeDestAddress, heapDestAddress;
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s64 textStartAddress, textTotalRoundedSize, rodataTotalRoundedSize, dataTotalRoundedSize;
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svcGetProcessInfo(&textTotalRoundedSize, processHandle, 0x10002);
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svcGetProcessInfo(&rodataTotalRoundedSize, processHandle, 0x10003);
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svcGetProcessInfo(&dataTotalRoundedSize, processHandle, 0x10004);
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svcGetProcessInfo(&textStartAddress, processHandle, 0x10005);
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codeTotalSize = (u32) (textTotalRoundedSize + rodataTotalRoundedSize + dataTotalRoundedSize);
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codeDestAddress = codeStartAddress = (u32) textStartAddress; //should be 0x00100000
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MemInfo info;
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PageInfo out;
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heapDestAddress = heapStartAddress = 0x08000000;
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svcQueryProcessMemory(&info, &out, processHandle, heapStartAddress);
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heapTotalSize = info.size;
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Result codeRes = svcMapProcessMemoryEx(processHandle, codeDestAddress, codeStartAddress, codeTotalSize);
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if (R_FAILED(codeRes))
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res = svcDebugActiveProcess(&debugHandle, pid);
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if (R_SUCCEEDED(res))
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{
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codeStartAddress = codeTotalSize = 0;
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}
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Cheat_EatEvents(debugHandle);
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cheat->valid = Cheat_ApplyCheat(debugHandle, cheat);
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Result heapRes = svcMapProcessMemoryEx(processHandle, heapDestAddress, heapStartAddress, heapTotalSize);
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if (R_FAILED(heapRes))
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{
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heapStartAddress = heapTotalSize = 0;
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}
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if (R_SUCCEEDED(codeRes) || R_SUCCEEDED(heapRes))
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{
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cheat->valid = Cheat_ApplyCheat(cheat);
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if (R_SUCCEEDED(codeRes))
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{
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svcUnmapProcessMemoryEx(processHandle, codeDestAddress, codeTotalSize);
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}
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if (R_SUCCEEDED(heapRes))
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{
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svcUnmapProcessMemoryEx(processHandle, heapDestAddress, heapTotalSize);
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}
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svcCloseHandle(debugHandle);
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svcCloseHandle(processHandle);
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cheat->active = 1;
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}
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else
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{
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svcCloseHandle(processHandle);
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sprintf(failureReason, "Can not map any memory");
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return codeRes;
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}
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}
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else
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@ -1073,8 +1055,12 @@ static void Cheat_LoadCheatsIntoMemory(u64 titleId)
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Cheat_AddCode(cheat, tmp);
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if (((tmp >> 32) & 0xFFFFFFFF) == 0xDD000000)
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{
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cheat->keyCombo |= (tmp & 0xFFF);
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cheat->keyActivated = 1;
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if (tmp & 0xFFFFFFFF)
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{
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// Not empty key code
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cheat->keyCombo |= (tmp & 0xFFF);
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cheat->keyActivated = 1;
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}
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}
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}
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}
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